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Interprotomer disulfide-stabilized variants of the human metapneumovirus fusion glycoprotein induce high titer-neutralizing responses

  1. Author:
    Stewart-Jones, Guillaume B. E.
    Gorman, Jason
    Ou, Li
    Zhang, Baoshan
    Joyce, M. Gordon
    Yang, Lijuan
    Cheng, Cheng
    Chuang, Gwo-Yu
    Foulds, Kathryn E.
    Kong, Wing-Pui
    Olia, Adam S.
    Sastry, Mallika
    Shen, Chen-Hsiang
    Todd, John-Paul
    Tsybovsky,Yaroslav
    Verardi, Raffaello
    Yang, Yongping
    Collins, Peter L.
    Corti, Davide
    Lanzavecchia, Antonio
    Scorpio, Diana G.
    Mascola, John R.
    Buchholz, Ursula J.
    Kwong, Peter D.
  2. Author Address

    NIH, Vaccine Res Ctr, Bldg 10, Bethesda, MD 20892 USA.New York Struct Biol Ctr, Simons Electron Microscopy Ctr, Natl Resource Automated Mol Microscopy, New York, NY 10027 USA.Henry M Jackson Fdn Adv Mil Med, Silver Spring, MD 20910 USA.NIAID, Lab Infect Dis, Bethesda, MD 20892 USA.Frederick Natl Lab Canc Res, Electron Microscopy Lab, Canc Res Technol Program, Frederick, MD 21701 USA.Univ Svizzera Italiana, Inst Res Biomed, CH-6500 Bellinzona, Switzerland.Humabs BioMed SA, CH-6500 Bellinzona, Switzerland.
    1. Year: 2021
    2. Date: Sep 28
  1. Journal: Proceedings of the National Academy of Sciences of the United States of America
  2. Natl Acad Sciences
    1. 118
    2. 39
  3. Type of Article: Article
  4. Article Number: ARTN e2106196118
  5. ISSN: 0027-8424
  1. Abstract:

    Human metapneumovirus (HMPV) is a major cause of respiratory disease worldwide, particularly among children and the elderly. Although there is no licensed HMPV vaccine, promising candidates have been identified for related pneumoviruses based on the structure-based stabilization of the fusion (F) glycoprotein trimer, with prefusion-stabilized F glycoprotein trimers eliciting significantly higher neutralizing responses than their postfusion F counterparts. However, immunization with HMPV F trimers in either prefusion or postfusion conformations has been reported to elicit equivalent neutralization responses. Here we investigate the impact of stabilizing disulfides, especially interprotomer disulfides (IP-DSs) linking protomers of the F trimer, on the elicitation of HMPV-neutralizing responses. We designed F trimer disulfides, screened for their expression, and used electron microscopy (EM) to confirm their formation, including that of an unexpected post fusion variant. In mice, IP-DS-stabilized prefusion and postfusion HMPV F elicited significantly higher neutralizing responses than non-IP-DS-stabilized HMPV Fs. In macaques, the impact of IP-DS stabilization was more measured, although IP-DS-stabilized variants of either prefusion or postfusion HMPV F induced neutralizing responses many times the average titers observed in a healthy human cohort. Serological and absorption-based analyses of macaque responses revealed elicited HMPV-neutralizing responses to be absorbed differently by IP-DS-containing and by non-IP-DS-containing postfusion Fs, suggesting IP-DS stabilization to alter not only the immunogenicity of select epitopes but their antigenicity as well. We speculate the observed increase in immunogenicity by IP-DS trimers to be related to reduced interprotomer flexibility within the HMPV F trimer.

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External Sources

  1. DOI: 10.1073/pnas.2106196118
  2. PMID: 34551978
  3. PMCID: PMC8488613
  4. WOS: 000708052600009

Library Notes

  1. Fiscal Year: FY2021-2022
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